MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations
10.1038/srep13321
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sg-nus-scholar.10635-1759872024-04-04T01:07:26Z MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations Ni Huang, M McPherson, J.R Cutcutache, I Teh, B.T Tan, P Rozen, S.G PHYSIOLOGY DUKE-NUS MEDICAL SCHOOL algorithm automated pattern recognition data mining database management system dna mutational analysis DNA sequence genetic database human machine learning microsatellite instability molecular genetics nucleotide sequence procedures reproducibility sensitivity and specificity software Algorithms Base Sequence Data Mining Database Management Systems Databases, Genetic DNA Mutational Analysis Humans Machine Learning Microsatellite Instability Molecular Sequence Data Pattern Recognition, Automated Reproducibility of Results Sensitivity and Specificity Sequence Analysis, DNA Software 10.1038/srep13321 Scientific Reports 5 13321 2020-09-14T07:38:04Z 2020-09-14T07:38:04Z 2015 Article Ni Huang, M, McPherson, J.R, Cutcutache, I, Teh, B.T, Tan, P, Rozen, S.G (2015). MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations. Scientific Reports 5 : 13321. ScholarBank@NUS Repository. https://doi.org/10.1038/srep13321 2045-2322 https://scholarbank.nus.edu.sg/handle/10635/175987 Unpaywall 20200831 |
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algorithm automated pattern recognition data mining database management system dna mutational analysis DNA sequence genetic database human machine learning microsatellite instability molecular genetics nucleotide sequence procedures reproducibility sensitivity and specificity software Algorithms Base Sequence Data Mining Database Management Systems Databases, Genetic DNA Mutational Analysis Humans Machine Learning Microsatellite Instability Molecular Sequence Data Pattern Recognition, Automated Reproducibility of Results Sensitivity and Specificity Sequence Analysis, DNA Software |
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algorithm automated pattern recognition data mining database management system dna mutational analysis DNA sequence genetic database human machine learning microsatellite instability molecular genetics nucleotide sequence procedures reproducibility sensitivity and specificity software Algorithms Base Sequence Data Mining Database Management Systems Databases, Genetic DNA Mutational Analysis Humans Machine Learning Microsatellite Instability Molecular Sequence Data Pattern Recognition, Automated Reproducibility of Results Sensitivity and Specificity Sequence Analysis, DNA Software Ni Huang, M McPherson, J.R Cutcutache, I Teh, B.T Tan, P Rozen, S.G MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
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10.1038/srep13321 |
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PHYSIOLOGY |
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PHYSIOLOGY Ni Huang, M McPherson, J.R Cutcutache, I Teh, B.T Tan, P Rozen, S.G |
format |
Article |
author |
Ni Huang, M McPherson, J.R Cutcutache, I Teh, B.T Tan, P Rozen, S.G |
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Ni Huang, M |
title |
MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
title_short |
MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
title_full |
MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
title_fullStr |
MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
title_full_unstemmed |
MSIseq: Software for assessing microsatellite instability from catalogs of somatic mutations |
title_sort |
msiseq: software for assessing microsatellite instability from catalogs of somatic mutations |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/175987 |
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1795374403140190208 |